Un enfoque centrado en el usuario en entornos complejos de diseño de ingeniería

  • Cristina Renzi Department of Engineering “Enzo Ferrari”, University of Modena and Reggio Emilia
  • Francesco Leali Department of Engineering “Enzo Ferrari”, University of Modena and Reggio Emilia

DOI:

https://doi.org/10.37610/84.683

Publicado

10-12-2024

Resumen

Dentro de un entorno de diseño de ingeniería complejo, la demanda de productos de alta calidad y alta funcionalidad es crítica. En este artículo, se propone un método integrado de diseño y simulación basado en decisiones y centrado en el usuario final, bien integrado en el contexto del entorno de diseño médico. El caso de estudio propuesto es el diseño de un dispositivo de intercomunicación, destinado a mejorar la comunicación médico-paciente en el caso de pacientes protegidos con casco para terapia de Presión Positiva Continua en las Vías Aéreas (CPAP) durante la emergencia por la pandemia del SARS-CoV-2. 

Palabras clave:

Diseño Centrado en el Usuario, Método de Diseño Integrado, Fuzzy-TOPSIS, toma de decisiones multicriterio en grupo

Agencias de apoyo

No

Referencias

ABRAS, C., MALONEY-KRICHMAR, D., & PREECE, J. (2004). «User-centered design. Bainbridge, W. Encyclopedia of Human-Computer Interaction». Thousand Oaks: Sage Publications, 37(4), 445-456.

ALEXANDER, K., CLARKSON, P.J. (2002). «A validation model for the medical devices industry». Journal of Engineering Design, 13(3), pp. 197-204.

ALEXANDER, K., CLARKSON, P.J. (2000). «Good design practice for medical devices and equipment, Part II: Design for validation». Journal of Medical Engineering and Technology, 24(2), pp. 53-62.

ARAÚZO, J. A., DEL OLMO, R., & LAVIÓS, J. J. (2013). «Subasta combinatoria para la programación dinámica en sistemas de fabricación distribuidos». Dirección y Organización, (51), 55-64.

ARAÚZO, J. A., DEL OLMO, R., & LAVIÓS, J. J. (2014). «Gaia Analysis and Design of a Multi-agent-based Shop Floor Control System». Dirección y Organización, (54), 26-35.

BARKAOUI, H., BEN REJEB, H., BARKAOUI, A., & TAVARES, J. M. R. (2022). «Multi-Criteria Decision Making for Medical Device Development». Engineering Management Journal, 1-18.

BASF (2017). Snap-Fit Design Manual. BASF Corporation, New Jersey, 2017

BEITZ, W., PAHL, G., & GROTE, K. (1996). «Engineering design: a systematic approach». Mrs Bulletin, 71.

BITKINA, O. V., KIM, H. K., & PARK, J. (2020). «Usability and user experience of medical devices: An overview of the current state, analysis methodologies, and future challenges». International Journal of Industrial Ergonomics, 76, 102932.

BOOTHROYD G. (1996). Design for Manufacture and Assembly: The Boothroyd-Dewhurst Experience. In: HUANG G.Q. (eds) Design for X. Springer, Dordrecht.

BRYANT, C. R., SIVARAMAKRISHNAN, K. L., VAN WIE, M., STONE, R. B., & MCADAMS, D. A. (2004, January). A modular design approach to support sustainable design. In International Design Engineering Technical Conferences and Computers and Infor-mation in Engineering Conference (Vol. 46962, pp. 909-918).

CURBELO, A. D., MUNICIO, Á. M. G., & DELGADO, F. M. (2018). «Herramientas para la gestión de riesgos en cadenas de suministro: una revisión de la literatura». Dirección y Organización, (64), 5-35

FAYEK, A. R., & OMAR, M. N. (2016). «A Fuzzy Topsis Method for Prioritized Aggregation in Multi-Criteria Decision Making Problems». Journal of Multi-Criteria Decision Analysis, 23(5-6), 242-256.

GARDAS, B. B., GHONGADE, N. P., & JAGTAP, A. H. (2022). «Application of multi-criteria decision-making approach in healthcare surgical management». Journal of Multi-Criteria Decision Analysis, 29(1-2), 92-109.

GLAIZE, A., DUENAS, A., DI MARTINELLY, C., & FAGNOT, I. (2019). «Healthcare decision-making applications using multicriteria decision analysis: A scoping review». Journal of Multi-Criteria Decision Analysis, 26(1-2), 62-83.

GÖTTGENS, I., & OERTELT-PRIGIONE, S. (2021). «The Application of Human-Centered Design Approaches in Health Research and Innovation: A Narrative Review of Current Practices». JMIR mHealth and uHealth, 9(12), e28102.

GRILLO-ESPINOZA, H., CAMPUZANO BOLARIN, F., & MULA, J. (2018). «Modelling performance management measures through statistics and system dynamics-based simulation». Dirección y Organización, 65, 20-35.

LA TORRE, D. (2022). «Multiple criteria decision making in health and medicine». Journal of Multi-Criteria Decision Analysis, 29(1-2), 3-4.

LUUKKA, P. (2011). «Fuzzy similarity in multicriteria decision-making problem applied to supplier evaluation and selection in supply chain management». Advances in Artificial Intelligence.

MEDINA SERRANO, R., GONZÁLEZ-RAMÍREZ, R., GASCÓ, J. L., & LLOPIS, J. (2019). Sustainable supplier evaluation practices across the supply chain.

MONEY, A. G., BARNETT, J., KULJIS, J., CRAVEN, M. P., MARTIN, J. L., & YOUNG, T. (2011). «The role of the user within the medical device design and development process: medical device manufacturers' perspectives». BMC medical informatics and decision making, 11(1), 1-12.

PAWAR, E. (2016). «A review article on acrylic PMMA. IOSR». J. Mech. Civ. Eng, 13(2), 1-4.

PE, M. E. W., KENDLER, J., & STROCHLIC, A. Y. (2015). Usability testing of medical devices. CRC press.

RAZMAK, J., & AOUNI, B. (2015). «Decision support system and multi-criteria decision aid: a state of the art and perspectives». Journal of Multi-Criteria Decision Analysis, 22(1-2), 101-117.

RENZI, C., ANGELO, L. D., & LEALI, F. (2019, September). Automotive Design Engineering: Material and Processes Selection Problems. In International Conference of the Italian Association of Design Methods and Tools for Industrial Engineering (pp. 373-384). Springer, Cham

RENZI, C., LEALI, F. (2016). «A Multicriteria Decision-Making Application to the Conceptual Design of Mechanical Components». Journal of Multi-Criteria Decision Analysis, 23 (3-4), pp. 87-111. https://doi.org/10.1002/mcda.1569

RENZI, C., LEALI, F. (2022). An Integrated Modular Design and Group Decision-Making Method in Complex Design Environments. In: RIZZI, C., CAMPANA, F., BICI, M., GHERARDINI, F., INGRASSIA, T., CICCONI, P. (eds) Design Tools and Methods in Industrial Engineering II. ADM 2021. Lecture Notes in Mechanical Engineering. Springer, Cham. https://doi.org/10.1007/978-3-030-91234-5_58

RENZI, C., LEALI, F., PELLICCIARI, M. ET AL. (2015). «Selecting alternatives in the conceptual design phase: an application of Fuzzy-AHP and Pugh’s Controlled Convergence». Int J Interact Des Manuf 9, 1–17. https://doi.org/10.1007/s12008-013-0187-y

RUSLI, L., LUSCHER, A., & SOMMERICH, C. (2010). «Force and tactile feedback in preload-ed cantilever snap-fits under manual assembly». International Journal of Industrial Er-gonomics, 40(6), 618-628.

SAŁABUN, W. (2014). «The Characteristic Objects Method: a new approach to identify a multi-criteria group decision-making model». Intl J Comput Tech Appl, 5(5), 1597-1602.

TALLARICO, S., ALOINI, D., DULMIN, R., LAZZINI, S., MININNO, V., & PELLEGRINI, L. (2021). «Health Technology Assessment of medical devices. Overcoming the critical issues of current assessment». Journal of Multi-Criteria Decision Analysis, 29(1-2), 150-172.

YOON K. AND HWANG, C.L. (1995). Multiple Attribute Decision Making: An Introduction. Sage, Thousand Oaks, CA.

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